Experimentally Validated Nonlinear Delayed Differential Approach to Model Borehole Propagation for Directional Drilling

Author:

Xu Jiamin1,Keller Alexander Mathew1,Demirer Nazli2,Zhang He3,Tian Kaixiao3,Bhaidasna Ketan2,Darbe Robert2,Chen Dongmei1

Affiliation:

1. The University of Texas at Austin , Austin, TX 78721

2. Halliburton , Houston, TX 77032

3. Halliburton , Singapore 639940

Abstract

Abstract This paper presents the development and validation of a nonlinear delay differential equation (DDE) model for borehole propagation in the inclination plane. Most importantly, built upon a quasi-linear model, the nonlinear approach incorporates information pertaining to the floating stabilizers and bit tilt saturation by formulating a linear complementarity problem. As a result, the outputs of the nonlinear model were in better agreement with the field data when compared with the quasi-linear model. The maximum modeling error of the nonlinear DDE is less than 1 deg over a drilled depth of 600 feet.

Publisher

ASME International

Subject

General Medicine,General Chemistry

Reference20 articles.

1. Adaptive Control for Directional Drilling Systems With Delay and Parameter Uncertainty;Koesdwiady,2016

2. Factors Affecting the Angle of Inclination and Dog-Legging in Rotary Bore Holes;Lubinski,1953

3. Bottom-Hole Assembly Analysis Using the Finite-Element Method;Millheim;J. Pet. Technol.,1978

4. Applications of a BHA Analysis Program in Directional Drilling;Rafie,1986

5. Analysis of Drilling String in Curved Bored Holes. SPE5071;Fischer,1966

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